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A list of all pages that have property "Description" with value "'''ATPases''' are enzymes that hydrolyse [[ATP]], releasing [[ADP]] and". Since there have been only a few results, also nearby values are displayed.

Showing below up to 10 results starting with #1.

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List of results

  • ATP synthase  + ('''ATP synthase''' or F-ATPase (F<sub&g โ€ฆ '''ATP synthase''' or F-ATPase (F<sub>1</sub>F<sub>O</sub>-ATPase; the use of Complex V is discouraged) catalyzes the [[endergonic]] phosphorylation of [[ADP]] to [[ATP]] in an over-all [[exergonic]] process that is driven by proton translocation along the [[protonmotive force]]. The ATP synthase can be inhibited by [[oligomycin]].[[oligomycin]].)
 ('''ATPases''' are enzymes that hydrolyse [[ATP]], releasing [[ADP]] and)
  • ATPases  + ('''ATPases''' are enzymes that hydrolyse [[ATP]] โ€ฆ '''ATPases''' are enzymes that hydrolyse [[ATP]], releasing [[ADP]] and [[inorganic phosphate]]. The contamination of isolated mitochondria with ATPases from other organelles and endogenous adenylates can lead to the production of ADP, which can stimulate respiration. This situation would lead to an overestimation of [[LEAK respiration]] measured in the absence of ADP, ''L''(n) and subsequent inhibition of respiration by oligomycin, ''L''(Omy). of respiration by oligomycin, ''L''(Omy).)
  • About DatLab  + ('''About DatLab''' contains general information about DatLab 8, including the current version number and used licenses.)
  • Acceleration  + ('''Acceleration''', '''''a''''', is the ch โ€ฆ '''Acceleration''', '''''a''''', is the change of [[velocity]] over time [mยทs<sup>-2</sup>].</br> '''''a''''' = d'''''v'''''/d''t''</br>The symbol ''g'' is used for acceleration of free fall. The standard acceleration of free fall is defined as ''g''<sub>n</sub> = 9.80665 [mยทs<sup>-2</sup>].ned as ''g''<sub>n</sub> = 9.80665 [mยทs<sup>-2</sup>].)
  • Acclimation  + ('''Acclimation''' is an immediate time scale adaption expressing phenotypic plasticity in response to changes of a single variable under controlled laboratory conditions.)
  • Acclimatization  + ('''Acclimatization''' is an immediate time scale adaption expressing phenotypic plasticity in response to changes of habitat conditions and life style where several variables may change simultaneously.)
  • Acyl-CoA dehydrogenase  + ('''Acyl-CoA dehydrogenases''' ACADs are lo โ€ฆ '''Acyl-CoA dehydrogenases''' ACADs are localized in the mitochondrial matrix. Several ACADs are distinguished: short-chain (SCAD), medium-chain (MCAD), and long-chain (LCAD). ACAD9 is expressed in human brain. ACADs catalyze the reaction</br>:::: acyl-CoA + FAD โ†’ ''trans''-2-enoyl-CoA + FADH<sub>2</sub>โ†’ ''trans''-2-enoyl-CoA + FADH<sub>2</sub>)
  • Acyl-CoA oxidase  + ('''Acyl-CoA oxidase''' is considered as a โ€ฆ '''Acyl-CoA oxidase''' is considered as a rate-limiting step in peroxysomal ''ฮฒ''-oxidation, which carries out few ''ฮฒ''-oxidation cycles, thus shortening very-long-chain fatty acids (>C<sub>20</sub>). Electrons are directly transferred from FADH<sub>2</sub> to O<sub>2</sub> with the formation of H<sub>2</sub>O<sub>2</sub>.t; to O<sub>2</sub> with the formation of H<sub>2</sub>O<sub>2</sub>.)
  • Acylcarnitine  + ('''Acylcarnitines''' are esters derivative โ€ฆ '''Acylcarnitines''' are esters derivative of [[carnitine]] and [[fatty acid]]s, involved in the metabolism of fatty acids. Long-chain acylcarnitines such as [[palmitoylcarnitine]] must be transported in this form, conjugated to carnitine, into the mitochondria to deliver fatty acids for fatty acid oxidation and energy production. Medium-chain acylcarnitines such as [[octanoylcarnitine]] are also frequently used for high-resolution respirometry.tly used for high-resolution respirometry.)
  • Adaptation  + ('''Adaptation''' is an evolutionary time scale expression of phenotypic plasticity in response to selective pressures prevailing under various habitat conditions.)
  • Add Graph/Delete bottom graph  + ('''Add:''' A new graph is added at the bottom of the screen. Select plots for display in the new graph, Ctrl+F6. '''Delete: Delete one of the graphs displayed in DatLab.)